Until the advent of POPLC, separating complex substances was so simple!
POPLC column composition:
Column assembly: A combination of column assemblies connected to each other
Column core: Various stationary phases are filled internally and manually embedded in the column assembly
Optimized fixed phase process: During pre-experimentation, data such as retention times for components passing through different fixed phases is recorded by analysis software. The computer uses calculation parameters including retention time and separation of components to help you optimize the best stationary phase filler combination and method for your sample.
|
POPLCTM design principle:
The design of the POPLC (Porous Graphitic Carbon Liquid Chromatography) optimization system is based on the Prism Model Theory (PRISMA Model), which has been used for selecting and optimizing the mobile phase in liquid chromatography. For further reference, please see [Szabolcs Nyiredy, K. Dallenbach-Tölke, O. Sticher in JPC (Journal of Planar Chromatography) 1, (1988), page 1241].
The vertical faces of the prism represent the retention strength for a given component, and this strength is achieved by the combination of stationary phases A, B, and C located on the irregular triangular surface at the top of the prism. Therefore, it can be realized through the application of various different filler column segments.
-
POPLC system offers common column cores with five stationary phases, available in lengths of 10mm, 20mm, 40mm, 60mm, and 80mm (as shown below). You can assemble various column lengths and different stationary phase combinations according to your needs.
In addition, the company provides customized services for special fillers.
|
P/N
|
Filler(s)
|
L×I.D.
(mm)
|
Particle size(s)
(µm)
|
Pore diameter(ies)
(Å)
|
POPLC Basic Kit 250-3
(P/N MSCQ-2503-3)
|
POPLC Basic Kit 150-3
(P/N MSCQ-1503-3)
|
POPLC Basic Kit 250-5
(P/N MSCQ-2503-5)
|
POPLC Basic Kit 150-5
(P/N MSCQ-1503-5)
|
|
UB03E18BPS050
|
C18 EPS 2
|
10×3.0
|
5
|
100
|
1
|
1
|
1
|
1
|
|
UC03E18BPS050
|
C18 EPS 2
|
20×3.0
|
5
|
100
|
1
|
1
|
1
|
1
|
|
UD03E18BPS050
|
C18 EPS 2
|
40×3.0
|
5
|
100
|
2
|
1
|
2
|
1
|
|
UE03E18BPS050
|
C18 EPS 2
|
60×3.0
|
5
|
100
|
1
|
|
1
|
|
|
UF03E18BPS050
|
C18 EPS 2
|
80×3.0
|
5
|
100
|
1
|
1
|
1
|
1
|
|
UB03E182PS050
|
C18 SH 2
|
10×3.0
|
5
|
100
|
1
|
1
|
1
|
1
|
|
UC03E182PS050
|
C18 SH 2
|
20×3.0
|
5
|
100
|
1
|
1
|
1
|
1
|
|
UD03E182PS050
|
C18 SH 2
|
40×3.0
|
5
|
100
|
2
|
1
|
2
|
1
|
|
UE03E182PS050
|
C18 SH 2
|
60×3.0
|
5
|
100
|
1
|
|
1
|
|
|
UF03E182PS050
|
C18 SH 2
|
80×3.0
|
5
|
100
|
1
|
1
|
1
|
1
|
|
UB03E052PS050
|
Phenyl 2
|
10×3.0
|
5
|
100
|
1
|
1
|
1
|
1
|
|
UC03E052PS050
|
Phenyl 2
|
20×3.0
|
5
|
100
|
1
|
1
|
1
|
1
|
|
UD03E052PS050
|
Phenyl 2
|
40×3.0
|
5
|
100
|
2
|
1
|
2
|
1
|
|
UE03E052PS050
|
Phenyl 2
|
60×3.0
|
5
|
100
|
1
|
|
1
|
|
|
UF03E052PS050
|
Phenyl 2
|
80×3.0
|
5
|
100
|
1
|
1
|
1
|
1
|
|
UB03E202PS050
|
CN 2
|
10×3.0
|
5
|
100
|
|
|
1
|
1
|
|
UC03E202PS050
|
CN 2
|
20×3.0
|
5
|
100
|
|
|
1
|
1
|
|
UD03E202PS050
|
CN 2
|
40×3.0
|
5
|
100
|
|
|
2
|
1
|
|
UE03E202PS050
|
CN 2
|
60×3.0
|
5
|
100
|
|
|
1
|
|
|
UF03E202PS050
|
CN 2
|
80×3.0
|
5
|
200
|
|
|
1
|
1
|
|
UB03H300PS050
|
C30
|
10×3.0
|
5
|
200
|
|
|
1
|
1
|
|
UC03H300PS050
|
C30
|
20×3.0
|
5
|
200
|
|
|
1
|
1
|
|
UD03H300PS050
|
C30
|
40×3.0
|
5
|
200
|
|
|
2
|
1
|
|
UE03H300PS050
|
C30
|
60×3.0
|
5
|
200
|
|
|
1
|
|
|
UF03H300PS050
|
C30
|
80×3.0
|
5
|
200
|
|
|
1
|
1
|
|
Other details:
- Transportation:By air if not specified.